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DLC AlN thin films influence the thermal conduction of HPLED light

机译:DLC&ALN薄膜会影响刷红光的热传导

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摘要

Thermal dissipation had an important influence in the effect and life of light emitting diodes (LED) because it enables transfer the heat away from electric device to the aluminum plate that can be used for heat removal. In the industrial processing, the quality of the thermal dissipation decides by the gumming technique between the PCB and aluminum plate. In this study, we fabricated double layer ceramic thin films of diamond like carbon (DLC) and alumina nitride (AlN) by vacuum sputtering soldered the substrate of high power light emitting diodes (HPLED) light to check the heat conduction. The ceramic dielectric coatings were characterized by several subsequent analyses, especially the measurement of real work temperature. The X-Ray photoelectron spectroscopy (XPS) patterns reveal those ceramic phases were successfully grown onto the substrate. The work temperatures show DLC and AlN films coating had limited the heat transfer by the lower thermal conductivity of these ceramic films. Obviously, it hadn't transferred heat and limited work temperature of HPLED better than DLC thin film only.
机译:热耗散对发光二极管(LED)的效果和寿命具有重要影响,因为它能够将热量从电气装置转移到可用于除去的铝板。在工业加工中,热耗散的质量通过PCB和铝板之间的凝固技术决定。在这项研究中,我们通过真空溅射焊接高功率发光二极管(浸湿)光的基板来制造金刚石(DLC)和氧化铝氮化物(ALN)的双层陶瓷薄膜,以检查热传导。陶瓷介电涂层的特征在于几种随后的分析,尤其是实际工作温度的测量。 X射线光电子能谱(XPS)图案揭示那些陶瓷相成功生长到基材上。工作温度显示DLC和ALN薄膜涂层通过这些陶瓷膜的较低导热率限制了热传递。显然,它没有比DLC薄膜更好地转移热量和有限的工作温度。

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